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This book presents a widespread description of the synthesis and characterization of biomass-based carbon nanostructures. It also covers the vital applications of these materials in supercapacitors and for next-generation energy storage devices. It describes the common design procedures, advantages and disadvantages of biomass-based carbon nanostructures and offers novel visions into the forthcoming directions. In addition, this book will provide new updates about the effect of doping and structural twist on the electrochemical performance of electrode materials derived from biomass sources. The book will be useful for beginners, researchers, and professionals working in the area of carbon nanomaterials and their applications in energy storage devices.
This book highlights the fundamental and applied properties of different soft functional materials in pure and engineered forms. It presents recent developments in soft materials, such as material synthesis, properties, multicomponent materials engineering, device fabrication, experimental techniques, computational calculations, theoretical outcomes, state-of-the-art characterizations, new technologies, and evaluation of device performance. The chapters in this book are useful for researchers, professionals, policymakers, etc., who are interested and involved in exploring the scope of soft materials in future green and sustainable technologies. The book also includes state-of-the-art review chapters written by well-known specialists in the field and discusses applications in areas such as energy harvesting, soft grippers, robotics, biomimetic devices, drug delivery, surgical devices, smart packaging, and aerospace devices, including self-reporting and self-healing materials.
The book provides an up-to-date account of the various techniques of fabrication & functionalization of electrospun nanofibers as well as recent advancements. An overview of the advanced applications of such techniques in different areas is also presented. Both experimental and theoretical approaches related to electrospun nanofibers are covered along with a discussion on the inherent properties of electrospun nanofibers. Therefore, this book provides a unique resource not only to established researchers but also newcomers starting out in this field.
This book covers the analysis of biosensing, site-targeted therapeutics, as well as visual analytics of release profile at the delivery site as possible uses for nanotheranostics therapies following the route of smart polymers. It discusses pH as well as temperature-sensitive polymers and their recent and relevant applications as biomaterials in drug delivery and tissue engineering including dual-stimuli smart polymers. Features Informs about the main challenges and prospects of nanotheranostics and smart polymers Covers biomedical application of smart polymers in imaging and therapy Includes a wide description of the different polymer structures, from hydrogel, core-shell to foams and nanofibers Introduces different types of emerging smart polymeric systems Discusses available potential of nanotheranostics and smart polymers toward commercialization This book is aimed at industrial pharmaceutical experts, higher institution lecturers/teachers, researchers, and graduate students in nanodrug delivery, polymeric delivery, bioimaging, and smart polymers.
This book gives a focused view of boron nitride (BN) nanostructures, including their structure, synthesis, properties, and various energy and healthcare-related applications. It covers varied dimensional structures of BN, along with other crystalline phases, and important properties of all these structures. It also covers different synthesis routes for all types of BN nanostructures, functional groups, defect engineering, etc. Further sections cover energy storage and conversion, biomedical, piezoelectric and sensing applications including challenges and opportunities. Provides exhaustive coverage of nanostructures of boron nitride. Discusses pertinent structure, synthesis, functionalization, and properties in detail. Emphasizes applications in the energy and healthcare sectors. Contains individual chapters on zero-dimensional, one-dimensional, two-dimensional, and three-dimensional structures of boron nitride. Includes patentability, market potential, and actual product information. This book is aimed at researchers and graduate students in Chemical Engineering, Materials Science, Physics, and Chemistry.
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